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广西典型高砷背景地区石漠化土壤中砷形态及相关因子研究 被引量:2
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作者 雷亚超 张学洪 +2 位作者 叶丽丽 袁贤斌 蒋金平 《生态环境学报》 CSCD 北大核心 2017年第2期335-341,共7页
广西的喀斯特地貌分布广泛,部分石漠化地区的土壤砷污染问题比较突出。为深入了解广西重金属高背景地区石漠化土壤中砷的变化特征及其影响因素,采集广西环江县地质背景相似的不同石漠化程度(无石漠化、轻度石漠化、中度石漠化、重度石漠... 广西的喀斯特地貌分布广泛,部分石漠化地区的土壤砷污染问题比较突出。为深入了解广西重金属高背景地区石漠化土壤中砷的变化特征及其影响因素,采集广西环江县地质背景相似的不同石漠化程度(无石漠化、轻度石漠化、中度石漠化、重度石漠化)的表层土样,分析土壤样品中砷含量及形态,并采用多元线性回归模型分析石漠化土壤中砷形态的主要影响因子。结果表明,随着石漠化程度的加剧,表层土壤中砷含量呈现出逐渐增加的趋势,但是在重度石漠化土壤中砷含量有所下降。石漠化土壤样品中砷含量较高的区域分布在轻度和中度石漠化的中坡和下坡。石漠化土壤中砷形态主要以残渣态为主,其次是可氧化态和可还原态,最低的是水溶态;砷的水溶态、可氧化态、可还原态在土壤中的含量随着石漠化程度的加剧呈现出逐渐减少的趋势。多元回归分析表明阳离子交换量是影响水溶态砷和可氧化态砷的主要因子,p H值是影响弱酸提取态砷和可还原态砷的主要因子,呈极显著正相关(P<0.01),总砷含量与残渣态砷呈显著正相关(P<0.05)。 展开更多
关键词 重金属高背景 石漠化 砷形态 影响因子
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Novel CO_(2) Adsorbent Prepared with ZSM-5/MCM-48 as Support:High Adsorption Property and Its Mechanism
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作者 WEI Jianwen ZHANG Lijuan +3 位作者 GENG Linlin LI Yu LIAO Lei WANG Dunqiu 《无机材料学报》 北大核心 2025年第7期833-839,I0015,I0016,共9页
Adsorption by solid amine adsorbent is a promising technology for decarbonization of flue gas.However,adsorption properties of many solid amine adsorbents need to be enhanced,and it is necessary to further study the C... Adsorption by solid amine adsorbent is a promising technology for decarbonization of flue gas.However,adsorption properties of many solid amine adsorbents need to be enhanced,and it is necessary to further study the CO_(2)adsorption mechanism.A novel CO_(2)adsorbent with high capacity was obtained by grafting 3-aminopropyltriethoxysilane(APTES)on a micro-mesoporous composite molecular sieve ZSM-5/MCM-48 as the support,and then impregnated with tetraethylenepentamine(TEPA)or polyethyleneimine(PEI).The maximum adsorption capacity of APTES-ZSM-5/MCM-48-TEPA-60(A-ZM-T60),loaded with 60%(in mass)TEPA,for CO_(2)reaches 5.82 mmol·g^(-1) at 60℃in 15%(in volume)CO_(2).Carbamate,alkyl ammonium carbamate and carbonate are generated during the chemical adsorption,which is dominant for CO_(2)adsorption because of the reaction between CO_(2)and amino groups on the adsorbent,simultaneously accompanied by weak physical adsorption.All above data confirm that these composites display an outstanding adsorption performance with a bright future for CO_(2)capture from flue gas after desulfurization. 展开更多
关键词 ZSM-5/MCM-48 amino-bifunctionalization CO_(2)capture adsorption kinetics adsorption mechanism
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